Abstract:
A plasma display panel and a method of manufacturing the same is provided. The plasma display panel includes a front substrate and a rear substrate spaced apart from each other. A plurality of electrode sheets are stacked between the front substrate and the rear substrate, and have apertures for forming a plurality of discharge spaces. The electrode sheets include a plurality of metal discharge electrodes extending so as to surround at least a part of each of the discharge spaces arranged in a column, and are separated from each other. Insulation members are located between the metal discharge electrodes, are formed of a oxide material of the metal of the metal discharge electrodes and insulate the metal discharge electrodes.
Abstract:
Provided are a plasma display panel and a method of fabricating the same. The plasma display panel includes: a plurality of substrates including a first substrate and a second substrate, which oppose each other; barrier ribs disposed between the substrates and defining a plurality of discharge cells; discharge electrodes buried within the barrier ribs and causing a discharge by an applied power; and a plurality of phosphor layers formed within the discharge cells, wherein the barrier ribs are formed of a plurality of sheets for barrier ribs and the discharge electrodes are patterned in a selected region of the sheets for barrier ribs. Dielectric walls, which are disposed between the substrates and in which a plurality of discharge electrodes are buried, are fabricated using a plurality of sheets through independent processes and are combined with the substrates, such that processes are simplified and thermal deformation during a baking process is minimized.
Abstract:
The present invention provides a plasma display panel (PDP) with a structure that can reduce an outer reflection of an external light source and increase the reflection of visible rays emitted from the phosphor, remarkably increase the aperture ratio of the front panel, and remarkably reduce occurrence of a permanent residual image. The PDP includes: a transparent front panel; a rear panel disposed in parallel with the front panel; a plurality of opaque upper barrier ribs disposed between the front panel and the rear panel to define a plurality of discharge cells, and formed of a dielectric material; a lower discharge electrode and an upper discharge electrode disposed within the plurality of opaque upper barrier ribs so as to enclose the discharge cells; a plurality of lower barrier ribs disposed between the plurality of opaque upper barrier ribs and the rear panel; a phosphor layer disposed within a space defined by the plurality of lower barrier ribs; and a discharge gas disposed inside the discharge cells.
Abstract:
Provided is a plasma display panel comprising a front substrate, a sealing layer that seals a discharge gas, and phosphor layers on the sealing layer without a rear substrate formed of glass, thereby improving brightness and luminous efficiency and a plasma display apparatus including the plasma display panel. The plasma display panel includes: a substrate; barrier ribs formed on the substrate and defining a plurality of discharge cells; pairs of discharge electrodes disposed in the barrier ribs and generating a discharge in the discharge cells; a sealing layer, along with the substrate, sealing the discharge cells; first phosphor layers disposed on the substrate in the discharge cells; and second phosphor layers disposed on the sealing layer in the discharge cells.
Abstract:
In a panel for plasma display, a method of manufacturing the same, a plasma display panel including the panel, and a method of manufacturing the plasma display panel, the panel for plasma display includes a substrate which is flexible, and a plurality of electrodes arranged on at least one surface of the substrate.
Abstract:
A plasma display panel having an improved exhaustion capacity. The plasma display panel includes a first substrate and a second substrate facing each other, an electrode sheet arranged between the first substrate and the second substrate and partitioning a space between the first substrate and the second substrate into a plurality of discharge cells, the electrode sheet including a plurality of pairs of discharge electrodes arranged within a plurality of barrier ribs, the plurality of pairs of discharge electrodes adapted to generate a discharge in the plurality of discharge cells, the electrode sheet extending throughout a discharge area where a discharge is generated and into a non-discharge area surrounding at least a portion of the discharge area and a spaced layer arranged on portions of the first substrate corresponding to the non-discharge area, wherein at least a portion of the electrode sheet within the discharge area is spaced apart from the first substrate by an exhaustion space and a portion of the electrode sheet in the non-discharge area is arranged between the spaced layer and the second substrate.
Abstract:
A plasma display panel (PDP) may include a first substrate, a second substrate spaced apart from the first substrate, a barrier rib interposed between the first and second substrates, the barrier rib including passages there through defining discharge cells, barrier rib electrodes including discharge parts adjacent the discharge cells and inside the barrier rib, contact parts arranged on a surface of the barrier rib and having round cross-sections, and intermediate parts connecting the discharge parts to the contact parts, terminal electrodes each having one end electrically connected to the contact parts and another end electrically connected to a signal transmitting member, phosphor in the discharge cells and a discharge gas in the discharge cells.
Abstract:
A plasma display panel may include a first substrate and a second substrate facing each other, barrier ribs disposed between the first substrate and the second substrate, and at least partially defining a plurality of discharge cells therebetween, a plurality of pairs of discharge electrodes for generating a discharge in the discharge cells, the plurality of pairs of discharge electrodes being arranged in non-display portions of the plasma display panel, and a color filter layer disposed between the barrier ribs and the first substrate.
Abstract:
A plasma display panel (PDP) includes a first substrate having a plurality of roughened portions, a second substrate spaced apart from the first substrate, a plurality of barrier ribs dividing a space between the first substrate and the second substrate into a plurality of discharge cells, the barrier ribs positioned between the second substrate and a respective roughened portion of the first substrate, and a plurality of first and second discharge electrodes disposed inside the electrode sheet.
Abstract:
A plasma display panel. A first substrate and a second substrate are provided opposing one another with a predetermined gap therebetween. Address electrodes are formed on the second substrate. Barrier ribs are mounted between the first substrate and the second substrate, the barrier ribs defining a plurality of discharge cells. Also, red, green, and blue phosphor layers are formed within each of the discharge cells. Discharge sustain electrodes are formed on the first substrate. The barrier ribs comprise first barrier rib members formed substantially parallel to the direction of the address electrodes, and second barrier rib members obliquely connected to the first barrier rib members and intersecting over the address electrodes. The second barrier rib members are formed to different widths according to discharge cell color such that red, green, and blue discharge cells have different volumes.